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首页> 外文期刊>Molecular Biology Reports >Molecular cloning and tissue expression of the fatty acid-binding protein (Es-FABP9) gene in the reproduction seasons of Chinese mitten crab, Eriocheir sinensis
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Molecular cloning and tissue expression of the fatty acid-binding protein (Es-FABP9) gene in the reproduction seasons of Chinese mitten crab, Eriocheir sinensis

机译:中华绒螯蟹繁殖期脂肪酸结合蛋白(Es-FABP9)基因的分子克隆和组织表达

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摘要

Fatty acid-binding proteins (FABPs), small cytosolic proteins that function in the uptake and utilization of fatty acids, have been extensively studied in higher vertebrates while invertebrates have received little attention despite similar nutritional requirements during periods of reproductive activity. Therefore, a cDNA encoding Eriocheir sinensis FABP (Es-FABP9) was cloned based upon EST analysis of a testis cDNA library. The full length cDNA was 898 bp and encoded a 136 aa polypeptide that was highly homologous to related genes reported in shrimp. Gene expression analysis, as determined by RT-PCR, revealed the presence of Es-FABP9 transcripts was widely distributed with high and detectable expression levels observed in intestine, ovary, testis and heart, while expression were comparable among hepatopancreas, hemolymphe, gills, muscle, stomach and brain. Real-time quantitative RT-PCR analysis revealed that Es-FABP9 expression in testis, hemolymphe, hepatopancreas and ovarian was dependent on the status of testis development. Evidence provided in the present report supports a role of Es-FABP9 in lipid transport during the period of rapid testis growth in E. sinensis, and indirectly confirms the participation of the hepatopancreas, testis, hemolymphe and ovarian in lipid nutrient absorption and utilization processes.
机译:脂肪酸结合蛋白(FABPs)是一种在脂肪酸的摄取和利用中起作用的小胞质蛋白,已经在高等脊椎动物中进行了广泛研究,而无脊椎动物尽管在生殖活动期间具有相似的营养要求,却很少受到关注。因此,基于对睾丸cDNA文库的EST分析,克隆了编码中华绒螯蟹FABP(Es-FABP9)的cDNA。全长cDNA为898bp,编码136aa的多肽,与虾中报道的相关基因高度同源。通过RT-PCR确定的基因表达分析表明,Es-FABP9转录本的分布广泛,在肠,卵巢,睾丸和心脏中均观察到高水平且可检测到的表达水平,而肝胰腺,血淋巴,g,肌肉之间的表达可比,胃和脑。实时定量RT-PCR分析显示,Es-FABP9在睾丸,血淋巴,肝胰腺和卵巢中的表达取决于睾丸发育的状态。本报告提供的证据支持Es-FABP9在中华绒螯蟹睾丸快速生长期间在脂质转运中的作用,并间接证实肝胰腺,睾丸,血淋巴和卵巢参与脂质营养物质的吸收和利用过程。

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